High-temperature heat-conduction material, as well as preparation method and application thereof
A conductive material and warming technology, which is applied in the field of high-temperature heat-conductive materials and their preparation, can solve the problems of unsatisfactory thermal conductivity and low heat-resistant temperature, and achieve the effects of improving unsatisfactory high-temperature resistance, improving high-temperature resistance, and simple operation
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Embodiment 1
[0020] A high-temperature heat conduction material proposed by the present invention includes the following raw materials in weight percentage: 0.11% carbon, 0.24% manganese, 0.66% silicon, 18% chromium, 6% nickel, 0.2% aluminum, 0.04% phosphorus, 0.03% sulfur, oxide Rare earth composition 0.5%, modified graphene oxide 2.4%, the balance is iron and unavoidable impurities; the rare earth oxide composition is obtained by ball milling lanthanum oxide and samarium oxide with a mass ratio of 1:1.4, and the rare earth oxide The particle size of the composition is 5 μm; the modified graphene oxide is prepared by the following method: Weigh graphene oxide, p-phenylenediamine and polyoxypropylene lanolin according to the mass ratio of 100:12:0.3, and Add graphene oxide to N,N-dimethylformamide that is 1.2 times the mass of graphene oxide, and ultrasonically disperse at 45°C for 50 minutes, then add the weighed p-phenylenediamine and polyoxypropylene lanolin ether, at 110 react at ℃ for...
Embodiment 2
[0026] A high-temperature heat conduction material proposed by the present invention includes the following raw materials in weight percentage: 0.12% carbon, 0.26% manganese, 0.64% silicon, 18% chromium, 8% nickel, 0.3% aluminum, 0.03% phosphorus, 0.02% sulfur, oxide Rare earth composition 0.4%, modified graphene oxide 2.8%, the balance is iron and unavoidable impurities; the rare earth oxide composition is obtained by ball milling lanthanum oxide and samarium oxide with a mass ratio of 1:1.6, and the rare earth oxide The particle size of the composition is 4 μm; the modified graphene oxide is prepared by the following method: Weigh graphene oxide, p-phenylenediamine and polyoxypropylene lanolin according to the mass ratio of 100:14:0.2, and Add graphene oxide to N,N-dimethylformamide that is 1.3 times the mass of graphene oxide, and ultrasonically disperse at 45°C for 60 minutes, then add the weighed p-phenylenediamine and polyoxypropylene lanolin ether, at 110 react at ℃ for...
Embodiment 3
[0032]A high-temperature heat conduction material proposed by the present invention includes the following raw materials in weight percentage: 0.13% carbon, 0.28% manganese, 0.62% silicon, 16% chromium, 8% nickel, 0.5% aluminum, 0.02% phosphorus, 0% sulfur, Rare earth oxide composition 0.2%, modified graphene oxide 3.6%, the balance is iron and unavoidable impurities; the rare earth oxide composition is obtained by ball milling lanthanum oxide and samarium oxide with a mass ratio of 1:1.8, and the oxide The particle size of the rare earth composition is 3 μm; the modified graphene oxide is prepared by the following method: Weigh graphene oxide, p-phenylenediamine and polyoxypropylene lanolin ether according to the mass ratio of 100:16:0.1, Add graphene oxide to N,N-dimethylformamide that is 1.4 times the mass of graphene oxide, and ultrasonically disperse at 40°C for 70 minutes, then add the weighed p-phenylenediamine and polyoxypropylene lanolin ether, and React at 110°C for ...
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